Design of PI and PID Control System for Induction Motor Control on Gamma Irradiator Characterization Prototype Using a Modified Ziegler-Nichols Method

Rissa Damayanti, Beny Syawaludin, H. A. Gunawan
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Abstract

The irradiator simulator's induction motor drive control system is carried out to maintain safety and accuracy in the loading/unloading process and product transportation system. Control is done by maintaining the speed of the induction motor at a certain speed so that the travel time for the loading/unloading process is predetermined. This study aims to answer the existing problems using the PI and PID control systems and prove that using the control system will give better results than the current system applications. In this study, the gain configuration for the PI controller that best fits the design requirements is obtained at a Kp value of 0.038, a Ki of 2.18, and a Phase Margin ( ) of 70°, resulting in a motor rotational speed that can achieve stability at the set point determined by the setting time is 0.90 seconds. The maximum overshoot is 0% and has a steady state error value of 0.00013. Then the gain configuration for the PID controller that best fits the design requirements is obtained at a value of Kp of 0.0066, Ki of 10.85, Kd of 9.9x10-7 and with a Phase Margin ( )  of 50°, resulting in a motor rotational speed that is high. Able to achieve stability at the specified set point with a setting time of 0.63 seconds and a maximum overshoot of 0%, the steady state error value of 0.00013. From the results obtained, it can be seen that this PI and PID control method can be used as an alternative control system on the induction motor drive system on the irradiator simulator. The controller can control the system according to the specified conditions so that the irradiation process time accuracy improves or increases.
基于改进Ziegler-Nichols方法的γ辐照器表征样机感应电机控制PI和PID控制系统设计
辐照模拟器的感应电机驱动控制系统是为了保证装卸过程和产品运输系统的安全性和准确性。控制是通过将感应电机的速度保持在一定的速度来完成的,这样就可以预定装载/卸载过程的行程时间。本研究旨在回答使用PI和PID控制系统存在的问题,并证明使用该控制系统会比目前的系统应用产生更好的效果。在本研究中,在Kp值为0.038,Ki值为2.18,相裕度()为70°时,获得了最符合设计要求的PI控制器增益配置,使得电机转速在设定时间所确定的设定值为0.90秒时能够达到稳定。最大超调量为0%,稳态误差值为0.00013。然后,在Kp为0.0066,Ki为10.85,Kd为9.9 × 10-7,相位裕度()为50°时,得到最符合设计要求的PID控制器增益配置,从而获得较高的电机转速。能在指定设定点稳定,设定点时间0.63秒,最大超调0%,稳态误差值0.00013。从得到的结果可以看出,这种PI和PID控制方法可以作为辐照模拟器上感应电机驱动系统的替代控制系统。控制器可以根据规定的条件对系统进行控制,使辐照过程时间精度提高或增加。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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